. [. Berini, Plasmon-polariton waves guided by thin lossy metal films of finite width: Bound modes of symmetric structures, Physical Review B, vol.61, issue.15, pp.61-10484, 2000.
DOI : 10.1103/PhysRevB.61.10484

. [. Berini, Plasmon-polariton waves guided by thin lossy metal films of finite width: Bound modes of asymmetric structures, Physical Review B, vol.63, issue.12, p.125417, 2001.
DOI : 10.1103/PhysRevB.63.125417

D. [. Bohren and . Huffman, Adsorption and Scattering of light by small particles, 1998.

T. [. Boltasseva, K. Nikolajsen, K. Leosson, M. S. Kjaer, S. I. Larsen et al., Integrated optical components utilizing long-range surface plasmon polaritons, Journal of Lightwave Technology, vol.23, issue.1, p.413, 2005.
DOI : 10.1109/JLT.2004.835749

URL : http://orbit.dtu.dk/ws/files/4518301/Boltasseva.pdf

V. [. Bozhevolnyi, E. Volkov, T. Devaux, and . Ebbesen, Channel Plasmon-Polariton Guiding by Subwavelength Metal Grooves, Physical Review Letters, vol.95, issue.4, p.46802, 2005.
DOI : 10.1103/PhysRevLett.95.046802

. [. Bozhevolnyi, Effective-index modeling of channel plasmon polaritons, Optics Express, vol.14, issue.20, p.9467, 2006.
DOI : 10.1364/OE.14.009467

V. [. Bozhevolnyi, E. Volkov, T. Devaux, and . Ebbesen, Channel plasmon subwavelength waveguide components including interferometers and ring resonators, Nature, vol.85, issue.7083, 2006.
DOI : 10.1038/nature04594

J. [. Briggs, S. P. Grandidier, E. Burgos, H. A. Feigenbaum, and . Atwater, Efficient Coupling between Dielectric-Loaded Plasmonic and Silicon Photonic Waveguides, Nano Letters, vol.10, issue.12, p.4851, 2010.
DOI : 10.1021/nl1024529

J. [. Brongersma, H. A. Hartman, and . Atwater, Electromagnetic energy transfer and switching in nanoparticle chain arrays below the diffraction limit, Physical Review B, vol.62, issue.24, 2000.
DOI : 10.1103/PhysRevB.62.R16356

G. [. Burke, T. Stegman, and . Tamir, Surface-polariton-like waves guided by thin, lossy metal films, Physical Review B, vol.33, issue.8, p.5186, 1986.
DOI : 10.1103/PhysRevB.33.5186

N. [. Charbonneau, G. Lahoud, P. Mattiussi, and . Berini, Demonstration of integrated optics elements based on long-ranging surface plasmon polaritons, Optics Express, vol.13, issue.3, p.977, 2005.
DOI : 10.1364/OPEX.13.000977

J. [. Chen, M. Shakya, and . Lipson, Subwavelength confinement in an integrated metal slot waveguide on silicon, Optics Letters, vol.31, issue.14, p.2133, 2006.
DOI : 10.1364/OL.31.002133

E. [. Chu, T. Schonbrun, K. B. Yang, and . Crozier, Experimental observation of narrow surface plasmon resonances in gold nanoparticle arrays, Applied Physics Letters, vol.93, issue.18, 2008.
DOI : 10.1063/1.3012365

. [. Citrin, Subwavelength nanoplasmonic ring resonators, Journal of the Optical Society of America B, vol.22, issue.8, p.1763, 2005.
DOI : 10.1364/JOSAB.22.001763

E. [. Crozier, E. Togan, T. Simsek, and . Yang, Experimental measurement of the dispersion relations of the surface plasmon modes of metal nanoparticle chains, Optics Express, vol.15, issue.26, p.17482, 2007.
DOI : 10.1364/OE.15.017482

A. [. Costantini, M. Bousseksou, B. Fevrier, R. Dagens, and . Colombelli, Loss and Gain Measurements of Tensile-Strained Quantum Well Diode Lasers for Plasmonic Devices at Telecom Wavelengths, IEEE Journal of Quantum Electronics, vol.48, issue.1
DOI : 10.1109/JQE.2011.2178818

R. [. Debackere, P. Baets, and . Bienstman, Bulk sensing experiments using a surface-plasmon interferometer, Optics Letters, vol.34, issue.18, p.2858, 2009.
DOI : 10.1364/OL.34.002858

D. [. Degiron and . Smith, Nonlinear long-range plasmonic waveguides, Physical Review A, vol.82, issue.3, p.33812, 2010.
DOI : 10.1103/PhysRevA.82.033812

S. [. Delacour, P. Blaize, J. M. Grosse, A. Fedeli, R. Bruyant et al., Efficient Directional Coupling between Silicon and Copper Plasmonic Nanoslot Waveguides: toward Metal???Oxide???Silicon Nanophotonics, Nano Letters, vol.10, issue.8, p.2922, 2010.
DOI : 10.1021/nl101065q

URL : https://hal.archives-ouvertes.fr/hal-00992869

]. R. Dewaele2007, A. De-waele, A. Koenderink, and . Polman, Tunable nanoscal localization of energy on plasmon particle arrays, Nano. Lett, vol.7, 2004.

K. [. Dionne, L. A. Diest, H. A. Sweatlock, and . Atwater, Plas- MOStor : A Metal-Oxide-Si field effect plasmonic modulator, 2009.

Z. [. Elezzabi, S. Han, V. Sederberg, and . Van, Ultrafast all-optical modulation in silicon-based nanoplasmonic devices, Optics Express, vol.17, issue.13, p.11045, 2009.
DOI : 10.1364/OE.17.011045

J. [. Félidj, G. Aubard, J. R. Lévi, G. Krenn, A. Schider et al., Enhanced substrate-induced coupling in two-dimensional gold nanoparticle arrays, Physical Review B, vol.66, issue.24, p.245407, 2002.
DOI : 10.1103/PhysRevB.66.245407

[. Koenderink and A. Polman, Complex response and polariton-like dispersion splitting in periodic metal nanoparticle chains, Physical Review B, vol.74, issue.3, p.33402, 2006.
DOI : 10.1103/PhysRevB.74.033402

[. Koenderink, R. De-waele, J. C. Prangsma, and A. Polman, Experimental evidence for large dynamic effects on the plasmon dispersion of subwavelength metal nanoparticle waveguides, Physical Review B, vol.76, issue.20, 2007.
DOI : 10.1103/PhysRevB.76.201403

[. Koenderink, Plasmon Nanoparticle Array Waveguides for Single Photon and Single Plasmon Sources, Nano Letters, vol.9, issue.12, p.4228, 2009.
DOI : 10.1021/nl902439n

D. [. Feng, M. Van-orden, Q. Abashin, Y. Wang, V. Chen et al., Nanoscale optical field localization by resonantly focused plasmons, Optics Express, vol.17, issue.6, p.4824, 2009.
DOI : 10.1364/OE.17.004824

P. [. Fevrier, A. Gogol, R. Aassime, D. Mégy, A. Delacour et al., Giant Coupling Effect between Metal Nanoparticle Chain and Optical Waveguide, Nano Letters, vol.12, issue.2, p.204265
DOI : 10.1021/nl204265f

URL : https://hal.archives-ouvertes.fr/hal-00992878

K. [. Gather, N. Meerholz, K. Danz, and . Leosson, Net optical gain in a plasmonic waveguide embedded in a fluorescent polymer, Nature Photonics, vol.19, issue.7, p.457, 2010.
DOI : 10.1038/nphoton.2010.121

C. [. Gesuele, G. Pang, S. Leblond, A. Blaize, P. Bruyant et al., Towards routine near-field optical characterization of silicon-based photonic structures: An optical mode analysis in integrated waveguides by transmission AFM-based SNOM, Physica E : Low-dimensional Systems and Nanostructures, p.1130, 2009.
DOI : 10.1016/j.physe.2008.08.042

S. [. Gosciniak, T. B. Bozhevolnyi, V. S. Andersen, J. Volkov, L. Kjelstrup-hansen et al., Thermo-optic control of dielectric-loaded plasmonic waveguide components, Optics Express, vol.18, issue.2, 1207.
DOI : 10.1364/OE.18.001207

URL : https://hal.archives-ouvertes.fr/hal-00472374

B. [. Goykhman, U. Desiatov, and . Levy, Experimental demonstration of locally oxidized hybrid silicon-plasmonic waveguide, Applied Physics Letters, vol.97, issue.14, p.141106, 2010.
DOI : 10.1063/1.3496463

S. [. Grandidier, G. Massenot, A. Colas-des-francs, J. C. Bouhelier, A. Weeber et al., Dielectric-loaded surface plasmon polariton waveguides: Figures of merit and mode characterization by image and Fourier plane leakage microscopy, Physical Review B, vol.78, issue.24, p.245419, 2008.
DOI : 10.1103/PhysRevB.78.245419

URL : https://hal.archives-ouvertes.fr/hal-00472378

S. [. Grandidier, G. Massenot, A. Colas-des-francs, J. C. Bouhelier, A. Weeber et al., Gain-Assisted Propagation in a Plasmonic Waveguide at Telecom Wavelength, Nano Letters, vol.9, issue.8, 2009.
DOI : 10.1021/nl901314u

URL : https://hal.archives-ouvertes.fr/hal-00472376

A. [. Han, V. Elezzabi, and . Van, Experimental realization of subwavelength plasmonic slot waveguides on a silicon platform, Optics Letters, vol.35, issue.4, p.502, 2010.
DOI : 10.1364/OL.35.000502

A. [. Han, V. Elezzabi, and . Van, Wideband Y-splitter and aperture-assisted coupler based on sub-diffraction confined plasmonic slot waveguides, Applied Physics Letters, vol.96, issue.13, p.131106, 2010.
DOI : 10.1063/1.3374454

L. [. Hernandez, F. Noordam, and . Robicheaux, Asymmetric Response in a Line of Optically Driven Metallic Nanospheres, The Journal of Physical Chemistry B, vol.109, issue.33, p.15808, 2005.
DOI : 10.1021/jp0527352

T. [. Hochberg, C. Baehr-jones, A. Walker, and . Scherer, Integrated plasmon and dielectric waveguides, Optics Express, vol.12, issue.22, p.5481, 2004.
DOI : 10.1364/OPEX.12.005481

S. [. Holmgaard and . Bozhevolnyi, Theoretical dielectricloaded surface plasmon polariton waveguides, Phys. Rev. B, vol.75, 2007.
DOI : 10.1103/physrevb.75.245405

Z. [. Holmgaard, S. I. Chen, L. Bozhevolnyi, A. Merkey, A. V. Dereux et al., Ben and splitting loss of dielectricloaded surface plasmon polariton waveguides, Optics Express, vol.18, p.13585, 2008.

R. [. Johnson and . Christy, Optical Constants of the Noble Metals, Physical Review B, vol.6, issue.12, 1972.
DOI : 10.1103/PhysRevB.6.4370

E. [. Kelly, L. L. Coronado, G. C. Zhao, and . Schatz, The optical properties of metal nanoparticles : the influence of size, shape, and dielectric environment, J. Phys. Chem. B, vol.107, issue.668, 2008.

E. [. Kekatpure, W. Barnard, M. L. Cai, and . Brongersma, Phase-Coupled Plasmon-Induced Transparency, Physical Review Letters, vol.104, issue.24, p.243902, 2010.
DOI : 10.1103/PhysRevLett.104.243902

J. [. Kim, S. Ju, M. Park, S. K. Kim, M. H. Park et al., Chip-to-chip optical interconnect using gold long-range surface plasmon polariton waveguides, Optics Express, vol.16, issue.17, p.13133, 2008.
DOI : 10.1364/OE.16.013133

Y. [. Kosako, H. F. Kadoya, and . Hofmann, Directional control of light by a nano-optical Yagi???Uda antenna, Nature Photonics, vol.6, issue.5, p.312, 2010.
DOI : 10.1038/nphoton.2010.34

A. [. Krasavin and . Zayats, Three-dimensional numerical modeling of photonic integration with dielectric-loaded SPP waveguides, Physical Review B, vol.78, issue.4, p.45425, 2008.
DOI : 10.1103/PhysRevB.78.045425

A. [. Krasavin and . Zayats, Silicon-based plasmonic waveguides, Optics Express, vol.18, issue.11, 2010.
DOI : 10.1364/OE.18.011791

. Girard, Squeezing the optical near-field zone by plasmon coupling of metallic nanoparticles, Phys. Rev. Lett, vol.82, p.2590, 1999.

J. [. Lamprecht, G. Krenn, H. Schider, M. Ditlbacher, N. Salermo et al., Surface plasmon propagation in microscale metal stripes, Applied Physics Letters, vol.79, issue.1, p.51, 2001.
DOI : 10.1063/1.1380236

M. [. Lau, A. S. Swillam, and . Helmy, Hybrid orthogonal junctions: wideband plasmonic slot-silicon waveguide couplers, Optics Express, vol.18, issue.26, 2010.
DOI : 10.1364/OE.18.027048

[. Leon and P. Berini, Amplification of long-range surface plasmons by a dipolar gain medium, Nature Photonics, vol.45, issue.6, p.382, 2010.
DOI : 10.1038/nphoton.2010.37

Z. [. Liu, S. Han, and . He, Novel surface plasmon waveguide for high integration, Optics Express, vol.13, issue.17, p.6645, 2005.
DOI : 10.1364/OPEX.13.006645

J. Q. Lu and A. A. Maradudin, Channel plasmons, Physical Review B, vol.42, issue.17, p.11159, 1990.
DOI : 10.1103/PhysRevB.42.11159

J. [. Massenot, A. Weeber, G. Bouhelier, J. Colas-des-francs, L. Grandidier et al., Differential method for modelling dielectric-loaded surface plasmon polariton waveguides, Optics Express, vol.16, p.175599, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00472403

P. [. Maier, H. A. Kik, S. Atwater, E. Meltzer, B. E. Harel et al., Local detection of electromagnetic energy transport below the diffraction limit in metal nanoparticle plasmon waveguides, Nature Materials, vol.2, issue.4, 2003.
DOI : 10.1038/nmat852

N. [. Melikyan, S. Lindenmann, P. M. Walheim, S. Leufke, J. Ulrich et al., Surface plasmon polariton absorption modulator, Optics Express, vol.19, issue.8855, 2011.
DOI : 10.1364/oe.19.008855

URL : http://digbib.ubka.uni-karlsruhe.de/volltexte/documents/3056454

F. [. Moreno, S. G. Garcia-vidal, L. Rodrigo, S. I. Martin-moreno, and . Bozhevolnyi, Channel plasmon-polaritons: modal shape, dispersion, and losses, Optics Letters, vol.31, issue.23, 2006.
DOI : 10.1364/OL.31.003447

URL : http://arxiv.org/abs/physics/0609158

K. [. Nikolajsen, S. I. Leosson, and . Bozhevolnyi, Surface plasmon polariton based modulators and switches operating at telecom wavelengths, Applied Physics Letters, vol.85, issue.24, p.5833, 2004.
DOI : 10.1063/1.1835997

P. [. Neutens, I. Van-dorpe, L. De-vlaminck, G. G. Lagae, and . Borghs, Electrical detection of confined gap plasmons in metal-dielectricmetal waveguides, Nature Photon, vol.3, issue.283, 2009.

A. [. Novikov and . Maradudin, Channel polaritons, Physical Review B, vol.66, issue.3, p.35403, 2002.
DOI : 10.1103/PhysRevB.66.035403

G. [. Noginov, A. M. Zhu, R. Belgrave, V. M. Bakker, E. E. Shalaev et al., Demonstration of a spaser-based nanolaser, Nature, vol.6, issue.7259, 1110.
DOI : 10.1038/nature08318

E. D. Palik, Handbook of Optical Constants of Solids, 1997.

[. Park and D. Stroud, Surface-plasmon dispersion relations in chains of metallic nanoparticles: An exact quasistatic calculation, Physical Review B, vol.69, issue.12, 2004.
DOI : 10.1103/PhysRevB.69.125418

M. [. Park, J. T. Kim, S. K. Kim, J. J. Park, M. H. Ju et al., long-range surface plasmon polariton waveguides at 1.31 m and 1.55 m wavelengths, Optics Comm, vol.281, 2008.

A. [. Pinchuk, G. Hilger, U. Von-plessen, and . Kreibig, Substrate effect on the optical response of silver nanoparticles, Nanotechnology, vol.15, issue.12, p.1890, 2004.
DOI : 10.1088/0957-4484/15/12/036

C. [. Quidant, J. C. Girard, A. Weeber, and . Dereux, Tailoring the transmittance of integrated optical waveguides with short metallic nanoparticle chains, Physical Review B, vol.69, issue.8, p.85407, 2004.
DOI : 10.1103/PhysRevB.69.085407

A. [. Quinten, J. R. Leitner, F. R. Krenn, and . Aussenegg, Electromagnetic energy transport via linear chains of silver nanoparticles, Optics Letters, vol.23, issue.17, p.1331, 1998.
DOI : 10.1364/OL.23.001331

. [. Raether, Surface Plasmons springer tracts in modern physics edition, 1988.

. [. Sarid, Long-range surface waves on very thin metal film, Phys. Rev. B, vol.47, 1927.

V. [. Sederberg, A. Y. Van, and . Elezzabi, Monolithic integration of plasmonic waveguides into a complimentary metal-oxide-semiconductorand photonic-compatible platform, Appl. Phys. Lett, vol.96, 2010.

. [. Simsek, Full Analytical Model for Obtaining Surface Plasmon Resonance Modes of Metal Nanoparticle Structures Embedded in Layered Media, Optics Express, vol.18, issue.2, 1722.
DOI : 10.1364/OE.18.001722

A. [. Steinberger, H. Hohenau, F. R. Ditlbacher, A. Aussenegg, J. R. Leitner et al., Dielectric stripes on gold as surface plasmon waveguides, Applied Physics Letters, vol.88, issue.9, p.81111, 2007.
DOI : 10.1063/1.2180448

T. [. Sukharev and . Seideman, Phase and Polarization Control as a Route to Plasmonic Nanodevices, Nano Letters, vol.6, issue.4, p.715, 2006.
DOI : 10.1021/nl0524896

. [. Taflove, Computational Electrodynamics : The finite-Difference Time-Domaine Method, 1995.

S. [. Tian, W. Yu, M. Yan, and . Qiu, Broadband high-efficiency surface-plasmon-polariton coupler with silicon-metal interface, Applied Physics Letters, vol.95, issue.1, p.13504, 2009.
DOI : 10.1063/1.3168653

S. [. Veronis and . Fan, Guided subwavelength plasmonic mode supported by a slot in a thin metal film, Optics Letters, vol.30, issue.24, p.3359, 2005.
DOI : 10.1364/OL.30.003359

S. [. Veronis and . Fan, Bends and splitters in metal-dielectric-metal subwavelength plasmonic waveguides, Applied Physics Letters, vol.87, issue.13, p.131102, 2005.
DOI : 10.1063/1.2056594

S. [. Veronis and . Fan, Modes of Subwavelength Plasmonic Slot Waveguides, Journal of Lightwave Technology, vol.25, issue.9, p.2511, 2007.
DOI : 10.1109/JLT.2007.903544

S. [. Volkov, E. Bozhevolnyi, T. Devaux, and . Ebbesen, Compact gradual bends for channel plasmon polaritons, Optics Express, vol.14, issue.10, p.4494, 2006.
DOI : 10.1364/OE.14.004494

S. [. Volkov, S. G. Bozhevolnyi, L. Rodrigo, F. J. Martin-moreno, E. Garcia-vidal et al., Nanofocusing with Channel Plasmon Polaritons, Nano Letters, vol.9, issue.3, 1278.
DOI : 10.1021/nl900268v

G. [. Weber and . Ford, Propagation of optical excitations by dipolar interactions in metal nanoparticle chains, Physical Review B, vol.70, issue.12, p.125429, 2004.
DOI : 10.1103/PhysRevB.70.125429

Y. [. Weeber, J. C. Lacroute, and . Weeber, Optial near-field distribution of urface plasmon waveguides modes, Phys. Rev. B, vol.68, 2003.

[. Wei, K. Su, S. Durant, and X. Zhang, Plasmon Resonance of Finite One-Dimensional Au Nanoparticle Chains, Nano Letters, vol.4, issue.6, 1067.
DOI : 10.1021/nl049604h

M. Wu, Z. Han, and V. Van, Conductor-gap-silicon plasmonic waveguides and passive components at subwavelength scale, Optics Express, vol.18, issue.11, 2010.
DOI : 10.1364/OE.18.011728

S. [. Yamaguchi, A. Yoshida, and . Kinbara, Optical effect of the substrate on the anomalous absorption of aggregated silver films. Thin Solid Film, 1974.

J. [. Yang, G. W. Sambles, and . Bradberry, Long-range surface modes supported by thin films, Physical Review B, vol.44, issue.11, p.5855, 1991.
DOI : 10.1103/PhysRevB.44.5855

K. [. Yang and . Crozier, Analysis of surface plasmon waves in metaldielectric- metal structures and the criterion for negative refractive index, Optics Express, vol.17, issue.2, p.1136, 2009.
DOI : 10.1364/OE.17.001136

R. [. Yang, Z. Wahsheh, M. A. Lu, and . Abushagur, Efficient light coupling between dielectric slot waveguide and plasmonic slot waveguide, Optics Letters, vol.35, issue.5, 2010.
DOI : 10.1364/OL.35.000649

P. [. Yariv and . Yeh, Photonics optical electronics in modern communications, 2005.

. [. Yee, Numerical solution of initial boundary value problems involving Maxwell's equations in isotropic media. Antennas and Propagation, IEEE Transactions, vol.14, issue.302, 1966.

H. [. Zhang and . Ho, Low-loss plasmonic waveguide based on gainassisted periodic metal nanosphere chains, Optics Express, 2010.

T. [. Zhou and . Odom, Tunable subradiant lattice plasmons by out-of-plane dipolar interactions, Nature Nanotechnology, vol.6, issue.7, p.423, 2011.
DOI : 10.1038/nnano.2011.72

N. [. Zou, G. C. Janel, and . Schatz, Silver nanoparticle array structures that produce remarkably narrow plasmon lineshapes, The Journal of Chemical Physics, vol.120, issue.23, 2004.
DOI : 10.1063/1.1760740

G. [. Zou and . Schatz, Metal nanoparticle array waveguides: Proposed structures for subwavelength devices, Physical Review B, vol.74, issue.12, 2006.
DOI : 10.1103/PhysRevB.74.125111